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香叶醇与生物源银纳米颗粒对耐甲氧西林菌的协同抗菌相互作用

Synergistic Antibacterial Interaction of Geraniol and Biogenic Silver Nanoparticles on Methicillin-Resistant .

作者信息

Castro Isabela Madeira de, Antunes Camila, Valentim Camila Cristina, Spoladori Laís Fernanda de Almeida, Suzukawa Helena Tiemi, Correia Guilherme Ferreira, Silva-Rodrigues Gislaine, Borges Paulo Henrique Guilherme, Bartolomeu-Gonçalves Guilherme, Silva Mariana Luiza, Bispo Marcelle de Lima Ferreira, Machado Rayanne Regina Beltrame, Nakamura Celso Vataru, Nakazato Gerson, Pinge-Filho Phileno, Tavares Eliandro Reis, Yamauchi Lucy Megumi, Yamada-Ogatta Sueli Fumie

机构信息

Programa de Pós-graduação em Microbiologia, Universidade Estadual de Londrina, Londrina 86055-900, Paraná, Brazil.

Laboratório de Biologia Molecular de Microrganismos, Universidade Estadual de Londrina, Londrina 86055-900, Paraná, Brazil.

出版信息

Plants (Basel). 2025 Mar 29;14(7):1059. doi: 10.3390/plants14071059.

Abstract

Since ancient times, plants have been used in folk medicine to treat different diseases. Plants offer exceptional chemical diversity with a wide range of biological activities, and have therefore been the most promising sources for the discovery and development of drugs, including antimicrobial agents. This study reports the antibacterial effect of geraniol (GER), alone and in combination with biogenic silver nanoparticles (bioAgNPs), produced using the aqueous extract of bark, against planktonic and sessile cells of methicillin-resistant (MRSA), one of the main opportunistic and potentially fatal human pathogens. GER had a time-dependent bactericidal effect on planktonic cells, impairing the cell membrane integrity. In addition, GER inhibited the staphyloxanthin production, and molecular docking analyses supported the in silico affinity of GER to dehydrosqualene synthase (CrtM) and 4,4'-diaponeurosporen-aldehyde dehydrogenase (AldH), which are key enzymes within the pigment biosynthesis pathway in . GER treatment increased the sensitivity of MRSA to hydrogen peroxide killing. GER displayed synergism with bioAgNPs against planktonic and sessile cells, inhibiting bacterial adhesion and the viability of biofilms formed on abiotic surfaces. MRSA planktonic and sessile cells treated with GER or GER/bioAgNPs displayed severe morphological and ultrastructural alterations. Notably, neither GER nor its combination caused in vitro and in vivo toxicity in mammalian cells and larvae, respectively. These findings suggest that the combination of GER/bioAgNPs may be a promising strategy to control MRSA infections.

摘要

自古以来,植物就被用于民间医学治疗各种疾病。植物具有独特的化学多样性和广泛的生物活性,因此一直是发现和开发药物(包括抗菌剂)最有前景的来源。本研究报告了香叶醇(GER)单独以及与使用树皮水提取物制备的生物银纳米颗粒(bioAgNPs)联合使用时,对耐甲氧西林金黄色葡萄球菌(MRSA)浮游细胞和固着细胞的抗菌作用,MRSA是主要的机会性和潜在致命性人类病原体之一。GER对浮游细胞具有时间依赖性杀菌作用,损害细胞膜完整性。此外,GER抑制金黄色葡萄球菌黄素的产生,分子对接分析支持GER与脱水鲨烯合酶(CrtM)和4,4'-二脱辅基神经孢菌醛脱氢酶(AldH)的计算机模拟亲和力,这两种酶是MRSA色素生物合成途径中的关键酶。GER处理增加了MRSA对过氧化氢杀伤的敏感性。GER与bioAgNPs对浮游细胞和固着细胞表现出协同作用,抑制细菌粘附和在非生物表面形成的生物膜的活力。用GER或GER/bioAgNPs处理的MRSA浮游细胞和固着细胞表现出严重的形态和超微结构改变。值得注意的是,GER及其组合分别在哺乳动物细胞和幼虫中均未引起体外和体内毒性。这些发现表明,GER/bioAgNPs组合可能是控制MRSA感染的一种有前景的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/099a/11991589/d9d85bf39fae/plants-14-01059-g001.jpg

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